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Apparent involvement of ribonuclease D in the 3 processing of tRNA precursors.

机译:核糖核酸酶D明显参与tRNA前体的3加工。

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摘要

Escherichia coli RNase D and RNase II have been purified to homogeneity and compared for their ability to remove extra nucleotides following the -C-C-A sequence in tRNA precursors. RNase D and RNase II are single-chain proteins with molecular weights of 38,000 and 78,000, respectively. Both enzymes require a divalent cation for activity on tRNA precursors, but, in addition, RNase II is stimulated by monovalent cations. RNase D specifically removes mononucleotide residues from a mixture of tRNA precursors to generate amino acid acceptor activity for essentially all amino acids. Although RNase II can also remove precursor-specific residues, no amino acid acceptor activity is recovered. Similarly, RNase D action on the E. coli tRNATyr precursor is limited, whereas RNase II causes extensive degradation. In contrast to the processive mode of hydrolysis by RNase II, RNase D removes nucleotides randomly and slows down greatly at the -C-C-A sequence, thereby allowing the tRNA to be aminoacylated and protected from further degradation. These results suggest that RNase D is the 3'-processing nuclease in vivo and that RNase II is a nonspecific degradative enzyme. The importance of RNA conformation for correct processing is also discussed.
机译:大肠杆菌RNase D和RNase II已纯化至同质,并比较了它们在tRNA前体中按照-C-C-A序列除去多余核苷酸的能力。 RNase D和RNase II是单链蛋白,分子量分别为38,000和78,000。两种酶都需要二价阳离子才能对tRNA前体产生活性,但是此外,RNase II受单价阳离子刺激。 RNase D可从tRNA前体混合物中特异性去除单核苷酸残基,从而为基本上所有氨基酸产生氨基酸受体活性。尽管RNase II也可以去除前体特异性残基,但未恢复氨基酸受体活性。同样,RNase D对大肠杆菌tRNATyr前体的作用受到限制,而RNase II则引起大量降解。与通过RNase II水解的过程模式相反,RNase D随机去除核苷酸,并在-C-C-A序列处大大减慢,从而使tRNA被氨基酰化并保护其免受进一步降解。这些结果表明,RNase D是体内3'加工核酸酶,而RNase II是非特异性降解酶。还讨论了RNA构象对正确加工的重要性。

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